Zhao, W.; Hao, C.; Guo, Y.; Shao, W.; Tian, Y.; Zhao, P.
Optimization of Adsorption Conditions Using Response Surface Methodology for Tetracycline Removal by MnFe2O4/Multi-Wall Carbon Nanotubes. Water 2023, 15, 2392.
https://doi.org/10.3390/w15132392
AMA Style
Zhao W, Hao C, Guo Y, Shao W, Tian Y, Zhao P.
Optimization of Adsorption Conditions Using Response Surface Methodology for Tetracycline Removal by MnFe2O4/Multi-Wall Carbon Nanotubes. Water. 2023; 15(13):2392.
https://doi.org/10.3390/w15132392
Chicago/Turabian Style
Zhao, Weigao, Chenjie Hao, Yiping Guo, Wanfei Shao, Yimei Tian, and Peng Zhao.
2023. "Optimization of Adsorption Conditions Using Response Surface Methodology for Tetracycline Removal by MnFe2O4/Multi-Wall Carbon Nanotubes" Water 15, no. 13: 2392.
https://doi.org/10.3390/w15132392
APA Style
Zhao, W., Hao, C., Guo, Y., Shao, W., Tian, Y., & Zhao, P.
(2023). Optimization of Adsorption Conditions Using Response Surface Methodology for Tetracycline Removal by MnFe2O4/Multi-Wall Carbon Nanotubes. Water, 15(13), 2392.
https://doi.org/10.3390/w15132392